Systems Engineer III - Model Based Systems Engineering (MBSE) Sierra Nevada CorpSystems Engineer III - Model Based Systems Engineering (MBSE)Dayton, OHJoin our team as a Systems Engineer, where you will leverage your expertise to conduct in-depth research, architect intricate system designs, create detailed models, simulate performance, rigorously test, certify, and optimize cutting-edge defense products and services. The ISR (Intelligence, Surveillance & Reconnaissance), Aviation, and Security (IAS) business area is a leader in ISR and aviation, it is a leading prime manned and unmanned aircraft systems integrator for innovative, high-performance ISR and aviation systems.
Acquisition Engineer (Aerospace, Aviation, Aircraft, Airworthiness, Etc.) COLSA CorporationAcquisition Engineer (Aerospace, Aviation, Aircraft, Airworthiness, Etc.)Dayton, OHAssist with technical requirements compliance pertaining to avionics development, test, sustainment and operations pertaining to navigation, voice communication systems, L ine of S ight (LOS) and B eyond L ine of S ight (BLOS) data link systems, military and civilian communication networks, network protocols, Information Protection Security ( IPSec ) , Simple Object Access Protocol ( SOAP ) / Extensible Markup Language ( XML ) packaging of network commands and air data systems to include performance, integrity and airworthiness . + Apply knowledge of systems engineering in support of system definition, development, integration, verification methods, sustainment, risk modeling/simulation, testing and evaluation, human system integration (HSI), crew stations engineering , OSS&E efforts, interoperability requirements, and airworthiness certification across a wide range of hardware and software systems, including ground based systems .
FAA Reliability and Maintainability Engineer Senior Colsa CorporationFAA Reliability and Maintainability Engineer SeniorDayton, OHAssist in providing support to produce or review products that include the following: technical evaluations/plans; engineering studies, reports, and analyses; and acquisition strategies/plans such as: ICD; Operational Requirements Document (ORD)/CDD; CONOPS; CPD; System Requirements Document (SRD); System Specification; RFPs; System Engineering Plan (SEP); Test and Evaluation Master Plan (TEMP); Test Acceptance Procedures (ATPs); Program Environment, Safety, and Occupational Health Evaluation (PESHE); information support plan; PPP; Technology Assessment/Control Plan (TA/CP); emerging technology assessments and Technology Transition Plans (TTPs); Information Assurance Strategy (IAS); Security Classification Guide (SCG); Alternative Live Fire Test and Evaluation Plan; Clinger-Cohen Act (CCA) compliance; Consideration of Technology Issues; Data Management Strategy; Chemical, Biological, Radiological, and Nuclear (CBRN) Survivability Assessments; Net-Centric Data Strategy; Spectrum Supportability Determination; Technical Data Rights Strategy; Technology Readiness 3.5.1.2.7 Assessment (TRA); Manufacturing Readiness Assessment (MRA); and other program/technical documents as required. Assist with establishing, implementing, and adhering to LCSE processes to ensure OSS&E compliance is achieved and maintained and aid the Air Force in reviewing and updating the OSS&E baseline document and shall support the Air Force in the identification of OSS&E elements, progress reporting of OSS&E metrics, and interaction with other organizations to ensure continued OSS&E compliance.
Systems Integration Engineer, Senior COLSA CorporationSystems Integration Engineer, SeniorDayton, OHFull timeAssist in translating user requirements into system requirements, which will be used to design, develop, fabricate, test and evaluate systems, subsystems, and equipment for deployment and in providing support to produce or review products that include the following: technical evaluations/plans; engineering studies, reports, and analyses; and acquisition strategies/plans such as: ICD; Operational Requirements Document (ORD)/CDD; CONOPS; CPD; System Requirements Document (SRD); System Specification; RFPs; System Engineering Plan (SEP); Test and Evaluation Master Plan (TEMP); Test Acceptance Procedures (ATPs); Program Environment, Safety, and Occupational Health Evaluation (PESHE); information support plan; PPP; Technology Assessment/Control Plan (TA/CP); emerging technology assessments and Technology Transition Plans (TTPs); Information Assurance Strategy (IAS); Security Classification Guide (SCG); Alternative Live Fire Test and Evaluation Plan; Clinger-Cohen Act (CCA) compliance; Consideration of Technology Issues; Data Management Strategy; Chemical, Biological, Radiological, and Nuclear (CBRN) Survivability Assessments; Net-Centric Data Strategy; Spectrum Supportability Determination; Technical Data Rights Strategy; Technology Readiness 3.5.1.2.7 Assessment (TRA); Manufacturing Readiness Assessment (MRA); and other program/technical documents as required. Review and assist in performing assessments on program specific databases, analyzing BIT failure reports, and comparing failure reports against the BIT interpreter analyzer for accuracy of BIT indications; provide system integration guidance to aircraft program offices for the program system installation and system maintenance; review and analyze technical proposals or modifications for design feasibility and system capability; assist in conducting performance effectiveness, cost effectiveness, cost performance, life-cycle cost, producibility, maintainability, supportability, reliability, technical and schedule risk assessments, and scheduling trade-off studies; and conducting systems analyses to including but not limited to system design/design feasibility and state-of-the-art assessments.
Systems Integration Engineer Senior Colsa CorporationSystems Integration Engineer SeniorDayton, OHAssist in translating user requirements into system requirements, which will be used to design, develop, fabricate, test and evaluate systems, subsystems, and equipment for deployment and in providing support to produce or review products that include the following: technical evaluations/plans; engineering studies, reports, and analyses; and acquisition strategies/plans such as: ICD; Operational Requirements Document (ORD)/CDD; CONOPS; CPD; System Requirements Document (SRD); System Specification; RFPs; System Engineering Plan (SEP); Test and Evaluation Master Plan (TEMP); Test Acceptance Procedures (ATPs); Program Environment, Safety, and Occupational Health Evaluation (PESHE); information support plan; PPP; Technology Assessment/Control Plan (TA/CP); emerging technology assessments and Technology Transition Plans (TTPs); Information Assurance Strategy (IAS); Security Classification Guide (SCG); Alternative Live Fire Test and Evaluation Plan; Clinger-Cohen Act (CCA) compliance; Consideration of Technology Issues; Data Management Strategy; Chemical, Biological, Radiological, and Nuclear (CBRN) Survivability Assessments; Net-Centric Data Strategy; Spectrum Supportability Determination; Technical Data Rights Strategy; Technology Readiness 3.5.1.2.7 Assessment (TRA); Manufacturing Readiness Assessment (MRA); and other program/technical documents as required. Review and assist in performing assessments on program specific databases, analyzing BIT failure reports, and comparing failure reports against the BIT interpreter analyzer for accuracy of BIT indications; provide system integration guidance to aircraft program offices for the program system installation and system maintenance; review and analyze technical proposals or modifications for design feasibility and system capability; assist in conducting performance effectiveness, cost effectiveness, cost performance, life-cycle cost, producibility, maintainability, supportability, reliability, technical and schedule risk assessments, and scheduling trade-off studies; and conducting systems analyses to including but not limited to system design/design feasibility and state-of-the-art assessments.
NewElectrical Engineer 1 (Onsite) Pratt & WhitneyElectrical Engineer 1 (Onsite)OhioFrom ice protection systems that keep aircraft operating safely in challenging weather to water and heating systems used on commercial aircraft around the world, you'll work on products that make air travel safer, more reliable, and more comfortable. This is an outstanding entry level opportunity to combine your classroom knowledge with your hands-on engineering experience while working alongside experienced engineers and technicians in a collaborative product development environment.
Aerospace Supplier Quality Engineer (FAI REVIEWER) TRIGO ADR AmericasAerospace Supplier Quality Engineer (FAI REVIEWER)Cincinnati, OH$70,000–$100,000 / yearTrigo’s team of dedicated Delivery Assurance Specialists, Supplier Development Specialists, Supplier Quality Engineers and Program Managers support hundreds of Customers and are deployed to thousands of Suppliers worldwide focused on achieving On-Time and On-Quality Delivery results. Prior practical experience and implementation of Quality Engineering tools and systems such as: DOE, FMEA, SPC, RCCA, APQP, PPAP, controls plans, material control, process control, systems performance, product evaluation, MSA, metrology, automated measurement, and software is preferred.
Journeyman Avionics Engineer Huntington Ingalls Industries IncJourneyman Avionics EngineerDayton Wright-Patterson AFB, OH$106,688–$145,000 / yearWhen extending an offer, HIIs Mission Technologies division takes a variety of factors into consideration which include, but are not limited to, the roles function and a candidates education or training, work experience, and key skills. Assist with execution of the USAF Airworthiness process per MIL-HDBK-516 and the AF Life-Cycle Systems Engineering (LCSE) and Operational Safety, Suitability, and Effectiveness (OSS&E) processes as prescribed by AFMCI 63-1201.
Aerospace Modeling and Simulation Engineer LeidosAerospace Modeling and Simulation EngineerDayton, OhioYou will play a valuable part in developing and testing models of aerospace systems, to include air-launched weapons; ballistic missile systems; avionics; hypersonic vehicles; and guidance, navigation, and controls across a wide range of projects and programs. May 26, 2026 For U.S. Positions: While subject to change based on business needs, Leidos reasonably anticipates that this job requisition will remain open for at least 3 days with an anticipated close date of no earlier than 3 days after the original posting date as listed above.
Software Engineer LeidosSoftware EngineerBeavercreek, OhioYour role will be to support our diverse portfolio of programs through a combination of software design and development, hardware interfacing and integration, laboratory experimentation, ground and flight testing to deploy cutting edge, next generation solutions. July 17, 2026 For U.S. Positions: While subject to change based on business needs, Leidos reasonably anticipates that this job requisition will remain open for at least 3 days with an anticipated close date of no earlier than 3 days after the original posting date as listed above.
NewMass Properties Engineer III Belcan LLCMass Properties Engineer IIIVandalia, OHDuties: Mass Properties Engineers at our client's site research, design, develop, test, certify, deploy and support cutting edge products & services. These cover a very wide range from state-of-the-art mission payloads and electronic systems through highly integrated aircraft to orbital and space exploration systems.
NewMass Properties Engineer II Belcan LLCMass Properties Engineer IIVandalia, OHDuties: Mass Properties Engineers with our customer research, design, develop, test, certify, deploy and support cutting edge products & services. These cover a very wide range from state-of-the-art mission payloads and electronic systems through highly integrated aircraft to orbital and space exploration systems.
Electrical Engineer II Belcan LLCElectrical Engineer IIVandalia, OHThis role will serve as an instrumentation specialist responsible for designing and integrating with aircraft systems, mechanical or electrical, as needed to support the collection of data for FAA/MIL certification requirements. Electrical engineers at our customers site will, research, design, develop, test, certify, deploy and improve cutting edge products and services.
Embedded Firmware/Software Engineer Resonant SciencesEmbedded Firmware/Software EngineerDayton, OhioThe candidate will have an opportunity to be a member of a world-class team consisting of talented and dedicated engineers, technicians, and professionals who work together to interrupt and challenge the status quo to design and develop state-of-the-art technologies. DUTIES AND RESPONSIBILITIES: We are seeking an Embedded Software Engineer with experience in software design and development to work in a fast-paced RF laboratory designing, developing and testing custom RF embedded solutions.
Signal Processing Software Engineer Resonant SciencesSignal Processing Software EngineerDayton, OhioThe candidate will have an opportunity to be a member of a world-class team consisting of talented and dedicated engineers, technicians, and professionals who work together to interrupt and challenge the status quo to design and develop state-of-the-art technologies. A career at Resonant Sciences means that you will be involved in the complete development life cycle, seeing your design evolve from development prototype to incorporating mission requirements to technical specifications into a finished product for field testing.
Mechanical Engineer Resonant SciencesMechanical EngineerDayton, OhioA career at Resonant Sciences means that you will be involved in the complete development life cycle, seeing your design evolve from development prototypes to incorporating mission requirements to technical specifications into a finished product for field testing. The candidate will have an opportunity to be a member of a world-class team consisting of talented and dedicated engineers, technicians, and professionals who work together to interrupt and challenge the status quo to design and develop state-of-the-art technologies.
RF Engineer Resonant SciencesRF EngineerDayton, OhioThe selected Engineer will have responsibility for and should have expertise in the following areas: Work with engineers experienced in RF measurement system design/testing, robotics, and software development to migrate capabilities from a lab environment to deliverable products. The candidate will have an opportunity to be a member of a world-class team consisting of talented and dedicated engineers, technicians, and professionals who work together to interrupt and challenge the status quo to design and develop state-of-the-art technologies.
Survivability Engineer Resonant SciencesSurvivability EngineerDayton, OhioWe are seeking engineers with education and experience to work in a fast-paced environment analyzing, developing, building, and testing aircraft models, component models such as radomes and antennas and supporting many functions that enable these activities. What you will be doing: As a member of the Survivability team you will be working to deliver signature simulations and test data to customers, while joining discussions on how to improve overall designs.
RF Hardware Engineer Resonant SciencesRF Hardware EngineerDayton, OhioThe candidate will have an opportunity to be a member of a world-class team consisting of talented and dedicated engineers, technicians, and professionals who work together to interrupt and challenge the status quo to design and develop state-of-the-art technologies. A career at Resonant Sciences means that you will be involved in the complete development life cycle, seeing your design evolve from development prototype to incorporating mission requirements to technical specifications into a finished product for field testing.
Gas Turbine Lead Operability Engineer GE AerospaceGas Turbine Lead Operability EngineerEvendale, OH$130,000–$175,000 / yearOperability in jet engine engineering is a cross-functional discipline focused on ensuring a gas turbine engine operates safely, stably, and reliably across its entire intended flight envelope, spanning from sub-idle to maximum power and for various environmental conditions. It acts as an integrator between performance (efficiency), compressor aerodynamics, aircraft inlet design, engine control systems and more, to ensure that high-performance designs do not suffer from instabilities like compressor stall/surge, combustor blowout, or over-temperature conditions.